Publication scientifique

AccueilNoninvasive theta-burst stimulation of the human striatum enhances striatal activity and motor...

Noninvasive theta-burst stimulation of the human striatum enhances striatal activity and motor skill learning

Abstract The stimulation of deep brain structures has thus far only been possible with invasive methods. Transcranial electrical temporal interference stimulation (tTIS) is a novel, noninvasive technology that might overcome this limitation. The initial proof-of-concept was obtained through modeling, physics experiments and rodent models. Here we show successful noninvasive neuromodulation of the striatum via tTIS in humans using computational modeling, functional magnetic resonance imaging studies and behavioral evaluations. Theta-burst patterned striatal tTIS increased activity in the striatum and associated motor network. Furthermore, striatal tTIS enhanced motor performance, especially in healthy older participants as they have lower natural learning skills than younger subjects. These findings place tTIS as an exciting new method to target deep brain structures in humans noninvasively, thus enhancing our understanding of their functional role. Moreover, our results lay the groundwork for innovative, noninvasive treatment strategies for brain disorders in which deep striatal structures play key pathophysiological roles.

Autres publications de la plateforme

Motor-evoked modules obtained from transcranial magnetic stimulation

Morishita, Takuya; Coscia, Martina; Bacigalupo, Mirea; Lassi, Michael; Proulx, Camille E.; Fleury, Lisa; Hummel, Friedhelm C.
Journal of Neurophysiology
Plateforme M/EEG & Neuromod (MEG)

Characterising the Diffusion Functional Signature of Negative BOLD With Interleaved TMS...

De Riedmatten, Inès; Spencer, Arthur P. C.; Martuzzi, Roberto; Rochas, Vincent; Pérot, Jean‐Baptiste; Szczepankiewicz, Filip; Jelescu, Ileana O.
Human Brain Mapping

Real-time reinforcement for human-machine interface control

Vassiliadis, Pierre; Pinheiro, Daniel Leal; Fleury, Lisa; Zenon, Alexandre; Esparza-Iaizzo, Martín; Ingster, Abigaïl; Micera, Silvestro; Shokur, Solaiman; Hummel, Friedhelm C.
Neuron

EEG microstates: from methodological foundations to clinical translation

Michel, Christoph M.; Bréchet, Lucie
Trends in Neurosciences

Linguistic pitch is hierarchically encoded in the right ventral stream

Oderbolz, Chantal; Orpella, Joan; Meyer, Martin
Communications Biology

Causal disconnectomics of motion perception networks: insights from transcranial magnetic stimulation‐induced...

Raffin, Estelle; Salamanca‐Giron, Roberto F.; Huxlin, Krystel R.; Reynaud, Olivier; Mattera, Loan; Martuzzi, Roberto; Hummel, Friedhelm C.
The Journal of Physiology

Journal de publication

Nature Neuroscience

Auteurs:

Wessel, Maximilian J.; Beanato, Elena; Popa, Traian; Windel, Fabienne; Vassiliadis, Pierre; Menoud, Pauline; Beliaeva, Valeriia; Violante, Ines R.; Abderrahmane, Hedjoudje; Dzialecka, Patrycja; Park, Chang-Hyun; Maceira-Elvira, Pablo; Morishita, Takuya; Cassara, Antonino M.; Steiner, Melanie; Grossman, Nir; Neufeld, Esra; Hummel, Friedhelm C.

Date de publication:

Plateforme:

Études récentes de la plateforme

Neurosciences cliniques et translationnelles

Perte de conscience de soi

Eveiller la prise de conscience Les troubles de la conscience de soi ne sont pas tous immédiatement perceptibles : certains restent masqués lors d'un...
Plateforme M/EEG & Neuromod (MEG)

Quand le cerveau s’éteint à l’IRM : un signal plus complexe...

Quand une diminution du signal reste difficile à interpréter L’imagerie par résonance magnétique fonctionnelle (IRMf) permet de repérer les régions du cerveau qui réagissent...
Plateforme d’Imagerie par Résonance Magnétique (IRM)Plateforme M/EEG & Neuromod (MEG)

La connaissance comme récompense

Comparaison de différents types de récompenses Les participants prennent part à une tâche comprenant trois types de récompenses, de valeur élevée ou faible : -...
Plateforme d’Imagerie par Résonance Magnétique (IRM)Plateforme M/EEG & Neuromod (MEG)